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U Pal

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Articles 30
Citations 277
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Recent Articles
1.
Bogireddy N, Pal U, Gomez L, Agarwal V
RSC Adv . 2022 May; 8(44):24819-24826. PMID: 35542117
Well crystalline gold nanoparticles (AuNPs) of different sizes were fabricated using sundried seed (CAS) extract at room temperature by controlling the pH of the green extract. The size, shape and...
2.
Klouwens M, Trentelman J, Ersoz J, Nieves Marques Porto F, Sima R, Hajdusek O, et al.
Sci Rep . 2021 Feb; 11(1):4775. PMID: 33637813
BB0405 is a surface exposed Borrelia burgdorferi protein and its vaccination protected mice against B. burgdorferi infection. As BB0405 is highly conserved across different B. burgdorferi sensu lato species, we...
3.
Katla S, Karmakar B, Tadi S, Mohan N, Anand B, Pal U, et al.
J Appl Microbiol . 2019 Feb; 126(5):1438-1453. PMID: 30776176
Aims: The present study was aimed at design of experiments (DoE)- and artificial intelligence-based culture medium optimization for high level extracellular production of a novel recombinant human interferon alpha 2b...
4.
Sahare P, Ayala M, Vazquez-Duhalt R, Pal U, Loni A, Canham L, et al.
Nanoscale Res Lett . 2016 Sep; 11(1):417. PMID: 27650291
The study of the stability enhancement of a peroxidase immobilized onto mesoporous silicon/silica microparticles is presented. Peroxidases tend to get inactivated in the presence of hydrogen peroxide, their essential co-substrate,...
5.
Ruiz Peralta M, Pal U, Zeferino R
ACS Appl Mater Interfaces . 2012 Sep; 4(9):4807-16. PMID: 22939243
ZnO nanorods decorated with gold nanoparticles of ~20 nm average size were fabricated by microwave-assisted chemical synthesis. For the surface-attached growth of metal nanoparticles, the ZnO nanostructures were first functionalized...
6.
Gonzalez A, Herrera M, Valenzuela J, Escobedo A, Pal U
J Nanosci Nanotechnol . 2011 Jul; 11(6):5526-31. PMID: 21770214
Cathodoluminescence emission of hydrothermally grown antimony doped ZnO nanostructures with different antimony doping (2.5, 4.8, and 11.8 at%) was studied in a scanning electron microscope (CL-SEM). Incorporation of antimony results...
7.
Pal M, Pal U, Chernov V, Melendrez R, Barboza-Flores M
J Nanosci Nanotechnol . 2009 May; 9(3):1851-7. PMID: 19435049
The thermoluminescence (TL) and optically stimulated luminescenece (OSL) response of TiO2:Yb nanoparticles are studied. After beta irradiation, the materials developed a significant TL/OSL signal associated to several localized trapping states...
8.
Gonzalez-Carrazco A, Herrera-Zaldivar M, Pal U
J Nanosci Nanotechnol . 2009 Feb; 8(12):6598-602. PMID: 19205247
The effect of indium doping on the point defect formation in ZnO nanostructures is studied by scanning tunneling microscopy (STM) and scanning tunneling spectroscopy (STS) techniques. While the incorporation of...
9.
Morales A, Pal U, Zaldivar M
J Nanosci Nanotechnol . 2009 Feb; 8(12):6551-7. PMID: 19205239
Incorporation of dopants in optoelectronic semiconductor nanostructures has been a matter of great interest in recent times. While such doping has been performed almost routinely using physical methods, use of...
10.
Morales A, ACEVES R, Pal U, Zhang J
J Nanosci Nanotechnol . 2009 Feb; 8(12):6538-44. PMID: 19205237
Photoluminescence (PL) emission and excitation (EPL) spectra of un-doped and indium (1%) doped 1D zinc oxide nanostructures are studied at different temperatures. The nanostructures reveal a blue emission band attributed...